Chaotic or Hyper-chaotic Oscillator? Numerical Solution, Circuit Design, MATLAB HDL-Coder Implementation, VHDL Code, Security Analysis, and FPGA Realization

Author(s):  
Talal Bonny
2010 ◽  
Vol 20 (10) ◽  
pp. 3267-3274 ◽  
Author(s):  
ENIS GÜNAY

A CNN-based nonautonomous chaotic oscillator circuit design is presented. Murali–Lakshmanan–Chua circuit, known as MLC circuit, is modeled by using CNN cells. The circuit implementation is supported by an eigenvalue study of the introduced system. The proposed model gives an alternative to MLC circuit with inductorless RC-based circuit realization.


Author(s):  
Michael Koo ◽  
Romain Gaucher ◽  
Charline Cleraux ◽  
Jenise Reyes Rodriguez

2013 ◽  
Author(s):  
Bojan Simic ◽  
Arshan Dabirsiaghi ◽  
Jeff Williams

2020 ◽  
Vol 75 (12) ◽  
pp. 1025-1037
Author(s):  
Akif Akgul ◽  
Omer Faruk Boyraz ◽  
Karthikeyan Rajagopal ◽  
Emre Guleryuz ◽  
Mustafa Zahid Yildiz ◽  
...  

AbstractIn this paper, we introduce a novel 3D chaotic oscillator which shows megastability without any external excitation. Some important dynamical properties of the proposed novel system were derived and investigated. Data protection application and its security analysis were realized for electrophysiological signals such as ECG, EEG and EMG on a microcomputer. This paper includes both encryption and data hiding processes for high security. Also a user interface was developed. For the encryption process, random numbers were generated by the megastable chaotic oscillator. These random numbers were tested with NIST-800-22 test which is the most widely accepted statistical test suite. The encrypted electrophysiological signals were analyzed by entropy, differential attacks, histogram, correlation, initial condition sensitivity, etc. The results of the analysis have shown that the proposed two level security method can be used in many fields as mobile. The most important feature of this paper is that both encryption and data hiding processes were implemented for electrophysiological signals. The experimental results verify that the proposed method has high security and is suitable for the protection of vital electrophysiological signals.


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